Robert E Sharp

Robert E Sharp

University of Missouri

H-index: 58

North America-United States

About Robert E Sharp

Robert E Sharp, With an exceptional h-index of 58 and a recent h-index of 33 (since 2020), a distinguished researcher at University of Missouri,

His recent articles reflect a diverse array of research interests and contributions to the field:

Not so hidden anymore: Advances and challenges in understanding root growth under water deficits

De novo transcriptome assembly from the nodal root growth zone of hydrated and water-deficit stressed maize inbred line FR697

Comparative Transcriptomics Reveal Metabolic Rather than Genetic Control of Divergent Antioxidant Metabolism in the Primary Root Elongation Zone of Water-Stressed Cotton and Maize

Antioxidant metabolism underlies different metabolic strategies for primary root growth maintenance under water stress in cotton and maize

Bioinformatics for plant and agricultural discoveries in the age of multiomics: A review and case study of maize nodal root growth under water deficit

Water deficit-induced changes in phenolic acid content in maize leaves is associated with altered expression of cinnamate 4-hydroxylase and p-coumaric acid 3-hydroxylase

Hydraulic flux–responsive hormone redistribution determines root branching

Ethylene inhibits rice root elongation in compacted soil via ABA-and auxin-mediated mechanisms

Robert E Sharp Information

University

Position

___

Citations(all)

14702

Citations(since 2020)

3373

Cited By

12662

hIndex(all)

58

hIndex(since 2020)

33

i10Index(all)

81

i10Index(since 2020)

63

Email

University Profile Page

University of Missouri

Google Scholar

View Google Scholar Profile

Top articles of Robert E Sharp

Title

Journal

Author(s)

Publication Date

Not so hidden anymore: Advances and challenges in understanding root growth under water deficits

Priya Voothuluru

Yajun Wu

Robert E Sharp

2024/2/21

De novo transcriptome assembly from the nodal root growth zone of hydrated and water-deficit stressed maize inbred line FR697

Scientific Reports

Sidharth Sen

Shannon K King

Tyler McCubbin

Laura A Greeley

Rachel A Mertz

...

2023/2/3

Comparative Transcriptomics Reveal Metabolic Rather than Genetic Control of Divergent Antioxidant Metabolism in the Primary Root Elongation Zone of Water-Stressed Cotton and Maize

Antioxidants

Jian Kang

Sidharth Sen

Melvin J Oliver

Robert E Sharp

2023/1/27

Antioxidant metabolism underlies different metabolic strategies for primary root growth maintenance under water stress in cotton and maize

Antioxidants

Jian Kang

Priyamvada Voothuluru

Elizabeth Hoyos-Miernyk

Danny Alexander

Melvin J Oliver

...

2022/4/22

Bioinformatics for plant and agricultural discoveries in the age of multiomics: A review and case study of maize nodal root growth under water deficit

Juexin Wang

Sen Sidharth

Shuai Zeng

Yuexu Jiang

Yen On Chan

...

2022/3

Water deficit-induced changes in phenolic acid content in maize leaves is associated with altered expression of cinnamate 4-hydroxylase and p-coumaric acid 3-hydroxylase

Plants

Zintle Kolo

Anelisa Majola

Kyle Phillips

Ali Elnaeim Elbasheir Ali

Robert E Sharp

...

2022/12/25

Hydraulic flux–responsive hormone redistribution determines root branching

Science

Poonam Mehra

Bipin K Pandey

Dalia Melebari

Jason Banda

Nicola Leftley

...

2022/11/18

Ethylene inhibits rice root elongation in compacted soil via ABA-and auxin-mediated mechanisms

Proceedings of the National Academy of Sciences

Guoqiang Huang

Azad Kilic

Michal Karady

Jiao Zhang

Poonam Mehra

...

2022/7/26

A multiple ion-uptake phenotyping platform reveals shared mechanisms affecting nutrient uptake by roots

Plant physiology

Marcus Griffiths

Sonali Roy

Haichao Guo

Anand Seethepalli

David Huhman

...

2021/3/1

Apoplastic hydrogen peroxide in the growth zone of the maize primary root. Increased levels differentially modulate root elongation under well-watered and water-stressed conditions

Frontiers in Plant Science

Priya Voothuluru

Pirjo Mäkelä

Jinming Zhu

Mineo Yamaguchi

In-Jeong Cho

...

2020/4/21

Exposing the hidden half: root research at the forefront of science

Jhonathan E Ephrath

Tamir Klein

Robert E Sharp

Naftali Lazarovitch

2020/2

A multiomics discriminatory analysis approach to identify drought-related signatures in maize nodal roots

Sidharth Sen

Tyler McCubbin

Shannon K King

Laura A Greeley

Shuai Zeng

...

2020/12/16

Maize lateral root developmental plasticity induced by mild water stress. II: Genotype‐specific spatio‐temporal effects on determinate development

Plant, cell & environment

Tyler G Dowd

David M Braun

Robert E Sharp

2020/10

See List of Professors in Robert E Sharp University(University of Missouri)